CN106114786A - Combination type aircraft carrier - Google Patents

Combination type aircraft carrier Download PDF

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Publication number
CN106114786A
CN106114786A CN201610555988.7A CN201610555988A CN106114786A CN 106114786 A CN106114786 A CN 106114786A CN 201610555988 A CN201610555988 A CN 201610555988A CN 106114786 A CN106114786 A CN 106114786A
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CN
China
Prior art keywords
body unit
lash barge
inner chamber
barge body
water
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Granted
Application number
CN201610555988.7A
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Chinese (zh)
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CN106114786B (en
Inventor
王海龙
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Market Supervision And Administration Bureau Of Babu District Hezhou City
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Individual
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Priority to CN201610555988.7A priority Critical patent/CN106114786B/en
Publication of CN106114786A publication Critical patent/CN106114786A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63GOFFENSIVE OR DEFENSIVE ARRANGEMENTS ON VESSELS; MINE-LAYING; MINE-SWEEPING; SUBMARINES; AIRCRAFT CARRIERS
    • B63G11/00Aircraft carriers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B1/00Hydrodynamic or hydrostatic features of hulls or of hydrofoils
    • B63B1/02Hydrodynamic or hydrostatic features of hulls or of hydrofoils deriving lift mainly from water displacement
    • B63B1/10Hydrodynamic or hydrostatic features of hulls or of hydrofoils deriving lift mainly from water displacement with multiple hulls
    • B63B1/12Hydrodynamic or hydrostatic features of hulls or of hydrofoils deriving lift mainly from water displacement with multiple hulls the hulls being interconnected rigidly
    • B63B1/121Hydrodynamic or hydrostatic features of hulls or of hydrofoils deriving lift mainly from water displacement with multiple hulls the hulls being interconnected rigidly comprising two hulls
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B21/00Tying-up; Shifting, towing, or pushing equipment; Anchoring
    • B63B21/56Towing or pushing equipment
    • B63B21/62Towing or pushing equipment characterised by moving of more than one vessel
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B43/00Improving safety of vessels, e.g. damage control, not otherwise provided for
    • B63B43/02Improving safety of vessels, e.g. damage control, not otherwise provided for reducing risk of capsizing or sinking
    • B63B43/04Improving safety of vessels, e.g. damage control, not otherwise provided for reducing risk of capsizing or sinking by improving stability
    • B63B43/06Improving safety of vessels, e.g. damage control, not otherwise provided for reducing risk of capsizing or sinking by improving stability using ballast tanks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B43/00Improving safety of vessels, e.g. damage control, not otherwise provided for
    • B63B43/18Improving safety of vessels, e.g. damage control, not otherwise provided for preventing collision or grounding; reducing collision damage

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  • Engineering & Computer Science (AREA)
  • Ocean & Marine Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Public Health (AREA)
  • Measuring Fluid Pressure (AREA)
  • Pressure Vessels And Lids Thereof (AREA)
  • Force Measurement Appropriate To Specific Purposes (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Manipulator (AREA)

Abstract

The invention discloses a kind of combination type aircraft carrier, including the first lash barge body unit and the second lash barge body unit, the side of described first lash barge body unit is provided with the first female connector;The respective side of described second lash barge body unit is provided with the first male connector matched with described first female connector;Described first female connector has the first inner chamber being suitable to receive described first male connector, the inwall of described first inner chamber is provided with the first pressure sensor device, described first pressure sensor device coordinates with described first male connector of insertion, for detecting the first force value on the vertical direction that described first inner chamber is applied by described first male connector, lash barge body unit is additionally provided with and the plumbing equipment of pressure sensor device compounding practice simultaneously, two lash barge body units can be preferably kept in a relatively fixed position by the present invention, avoid two lash barge body units because horizontal level is different and cause connection member to rupture.

Description

Combination type aircraft carrier
Technical field
The present invention relates to a kind of Ship Structure, be specifically related to a kind of combination type aircraft carrier.
Background technology
Aircraft carrier, is a kind of with the large-scale water surface naval vessels that carrier-borne aircraft is main operational weapon, is aircraft carrier group Core, other ship in fleet provide its protection and supply, aircraft carrier then provides air umbrella and long-range strike ability.Send out So far, aircraft carrier has been the weapon that Modern Navy is indispensable, is also one of most important naval vessels of sea warfare in exhibition.Current aviation Mother ship carrier is all integrally-built huge monster, because target is big, will realize hidden action, and surprise attack is nearly impossible, The most also because target is big, it is easy under attack, additionally, all technologic difficulties also can be run in building course.
The Chinese patent literature of Publication No. CN101259876 discloses a kind of building block type aircraft carrier.Described building blocks Formula aircraft carrier is connected with each other is formed by a control vessel and many unit warship.Connection between control vessel and many unit warships and It is separately by being installed on the Zhan Tianyou of warship body sidewall realization.On warship body sidewall, the corresponding Zhan Tian place of helping processes circular cone shape Boss or pit, be fixed with buffer rubber gasket at boss or pit surface, when the sidewall of two warship bodies is connected, a side Boss on wall just inserts in the pit on another sidewall, and the most identical, is arranged on the Zhan Tianyou in boss and pit Being just a set of, wherein Zhan Tian helps and is connected with the executor being fixed in warship body on sidewall.By this connected mode Can realize the lengthening of aircraft carrier longitudinal direction runway, thus the takeoff and landing of beneficially carrier-borne aircraft.
Above-mentioned cordwood aircraft carrier, only the boss on two unit warships and pit parts are respectively away from the water surface The most identical, and during water surface calmness, be only possible to realize unit by the docking of predetermined way.But, the aircraft carrier one after docking On a denier wherein unit warship, tote weight declines, and this hull then can float, if another unit warship does not alleviate equally Many totes, then be there will be floating warship and coordinated by upwards boss and pit, upwards lever up non-rising warship, the most very It is likely to result at boss and pit cooperation that phenomenon of rupture occurs;In like manner, if wherein the weight of a warship tote increases, and The weight of another warship tote is constant or declines, and also there will be this phenomenon.In order to avoid phenomenon of rupture occurs, and not by even Fitting carries out being relatively fixed connection, and wherein a unit warship floats, and another maintains draft constant, then cannot be fine Realize two unit warships and be in relatively fixed position, and then the takeoff and landing that cannot realize well for carrier-borne aircraft is continuous Longitudinal direction add long runway.
Summary of the invention
To this end, the technical problem to be solved is that providing one can preferably realize two unit warships keeps phase To fixing position, the combination type aircraft carrier of two unit warship connection member fractures can be avoided again well.
Another technical problem to be solved by this invention is that providing a kind of is easy to the combination type that unit warship quickly connects Aircraft carrier.
For solving above-mentioned technical problem, the present invention provides a kind of combination type aircraft carrier, including the first lash barge body unit and second Lash barge body unit,
The side of described first lash barge body unit is provided with the first female connector;
It is public even that the respective side of described second lash barge body unit is provided with first matched with described first female connector Fitting;
Described first female connector has the first inner chamber being suitable to receive described first male connector, described first inner chamber Inwall is provided with the first pressure sensor device, and described first pressure sensor device coordinates with described first male connector of insertion, For detecting the first force value on the vertical direction that described first inner chamber is applied by described first male connector;
Described first lash barge body unit includes:
First Lower Hold, described first Lower Hold has the first water inlet connect with aqueous phase;
First plumbing equipment, described first plumbing equipment includes being located at the first plumbing within described first Lower Hold Device, and the first control of water supply and drainage dress being connected with described first water feeding and draining device and described first pressure sensor device respectively Putting, described first control of water supply and drainage device, according to the pressure signal for described first force value received, controls described One water feeding and draining device introduces the water into and discharges described first Lower Hold by described first water inlet, thus regulates described first lash barge The draft of body unit, and then two described lash barge body units are maintained at default relative position.
Combinations thereof formula aircraft carrier, wherein, the side of described second lash barge body unit is provided with the second female connector;Described The respective side of one lash barge body unit is provided with the second male connector matched with described second female connector;Described second is female Connector has the second inner chamber being suitable to receive described second male connector, and the inwall of described second inner chamber is provided with the second pressure Sensing device, described second pressure sensor device coordinates with described second male connector of insertion, is used for detecting described second public The second force value on vertical direction that described second inner chamber is applied by connector;Described second lash barge body unit includes: second Lower Hold, described second Lower Hold has the second water inlet connect with aqueous phase;Second plumbing equipment, described second plumbing equipment bag Include the second water feeding and draining device being located within described second Lower Hold, and respectively with described second water feeding and draining device and described second Pressure sensor device connect the second control of water supply and drainage device, described second control of water supply and drainage device according to receive for institute State the pressure signal of the second force value, control described second control of water supply and drainage device introduced the water into by described second water inlet and Discharge Lower Hold described in second, thus regulate the draft of described second lash barge body unit, and then by two described lash barge body lists Unit is maintained at default relative position.
Combinations thereof formula aircraft carrier, wherein, described first pressure sensor device includes the upper inwall being located at described first inner chamber Press up the first upward pressure sensing device of force value with being used for detection first on lower inwall and be pressed downward against force value for detection first The first downforce sensing device;Described first control of water supply and drainage device is believed according to the pressure of described first upward pressure sensing device Number control described first water feeding and draining device discharges described first Lower Hold of described first lash barge body unit by water, and according to described The pressure signal of the first downforce sensing device controls described first water feeding and draining device and introduces the water into described first lash barge body list Described first Lower Hold of unit, until detected by described first upward pressure sensing device or described first downforce sensing device Force value arrives the scope preset.
Combinations thereof formula aircraft carrier, wherein, described second pressure sensor device includes the upper inwall being located at described second inner chamber Press up the second upward pressure sensing device of force value with being used for detection second on lower inwall and be pressed downward against force value for detection second The second downforce sensing device;Described second control of water supply and drainage device is believed according to the pressure of described second upward pressure sensing device Number control described second water feeding and draining device discharges described second Lower Hold of described second lash barge body unit by water, and according to described The pressure signal of the second downforce sensing device controls described second water feeding and draining device and introduces the water into described second lash barge body list Described second Lower Hold of unit, until detected by described second upward pressure sensing device or described second downforce sensing device Force value arrives the scope preset.
Combinations thereof formula aircraft carrier, wherein, described first upward pressure sensing device includes: buffer unit on first, one end is propped up Support on the inwall of described first inner chamber;Snubber contact parts on first, are connected with the other end of buffer unit on described first Connect, coordinate with buffer unit on described first, it is achieved to snubber contact parts on described first to the inwall of described first inner chamber The buffering of motion;First upward pressure signal generation device, is connected with snubber contact parts on described first, by slow on described first The stroke rushing the contact component inwall motion to described first inner chamber is converted into pressure signal, and exports this in the way of the signal of telecommunication Pressure signal;Described first downforce sensing device includes: first time buffer unit, and one end is supported in the interior of described first inner chamber On wall;First time snubber contact parts, is connected with the other end of described first time buffer unit, with described first time buffer part Part coordinates, it is achieved the buffering moved described first time snubber contact parts to the inwall of described first inner chamber;First downforce Signal generation device, is connected with described first time snubber contact parts, by described first time snubber contact parts to described first The stroke of the inwall motion of inner chamber is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication.
Combinations thereof formula aircraft carrier, wherein, described second upward pressure sensing device includes: buffer unit on second, one end is propped up Support on the inwall of described second inner chamber;Snubber contact parts on second, are connected with the other end of buffer unit on described second Connect, coordinate with buffer unit on described second, it is achieved to snubber contact parts on described second to the inwall of described second inner chamber The buffering of motion;Second upward pressure signal generation device, is connected with snubber contact parts on described second, by slow on described second The stroke rushing the contact component inwall motion to described second inner chamber is converted into pressure signal, and exports this in the way of the signal of telecommunication Pressure signal;Described second downforce sensing device includes: second time buffer unit, and one end is supported in the interior of described second inner chamber On wall;Second time snubber contact parts, is connected with the other end of described second time buffer unit, with described second time buffer part Part coordinates, it is achieved the buffering moved described second time snubber contact parts to the inwall of described second inner chamber;Second downforce Signal generation device, is connected with described second time snubber contact parts, by described second time snubber contact parts to described second The stroke of the inwall motion of inner chamber is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication.
Combinations thereof formula aircraft carrier, wherein, described first lash barge body unit is installed with the first pulling equipment, and described One pulling equipment is furnished with recyclable and the first drag rope of release, and described second lash barge body unit is provided with and is suitable to and described the One drag rope carries out the first rope fixture of detachable connection.
Combinations thereof formula aircraft carrier, wherein, described first male connector is formed with the first through hole, and described female connector becomes Shape has the second through hole, is respectively adapted to pass for described first drag rope;When described first drag rope one end is arranged on described On pulling equipment, the other end is each passed through described first through hole and described second through hole is connected with described first rope fixture Time, described drag rope is reclaimed by described first pulling equipment by described first through hole, thus pulls another ship described Body unit moves along described drag rope direction of recession, and then makes described first male connector connect with described first female connector Close, it is achieved the docking of two hull unit.
Combinations thereof formula aircraft carrier, wherein, described first male connector has tapered protrusion structure or spherical surface hill structure;Institute State the first female connector have with described tapered protrusion structure corresponding conical indentation structure or with described spherical surface hill structure phase Corresponding spherical depression structure;And described first through hole is positioned at described tapered protrusion structure or the central part of spherical surface hill structure Position, described second through hole is positioned at described conical indentation structure or the centre of described spherical depression structure.
The technique scheme of the present invention has the advantage that compared to existing technology
1. the combination type aircraft carrier of the present invention, including the first lash barge body unit and the second lash barge body unit, described first lash barge The side of body unit is provided with the first female connector;The respective side of described second lash barge body unit is provided with female with described first The first male connector that connector matches;The male connector matched each other by employing and the connected mode of female connector, can Easily two sub-hull unit are fixed together, and simple in construction, solid and reliable;Meanwhile, described first mother is even Fitting has the first inner chamber being suitable to receive described first male connector, and the inwall of described first inner chamber is provided with the first pressure and passes Induction device, described first pressure sensor device coordinates with described first male connector of insertion, is used for detecting described first public affairs even The first force value on vertical direction that described first inner chamber is applied by fitting;Described first lash barge body unit includes: first end Storehouse, described first Lower Hold has the first water inlet connect with aqueous phase;First plumbing equipment, described first plumbing equipment includes It is located at the first water feeding and draining device within described first Lower Hold, and presses with described first water feeding and draining device and described first respectively Force sensor connect control of water supply and drainage device, described control of water supply and drainage device according to receive for described first pressure The pressure signal of value, controls described first water feeding and draining device and introduces the water into and discharge described first end by described first water inlet Storehouse, thus regulate the draft of described first lash barge body unit, and then two described lash barge body units are maintained at default Position relatively;The lash barge body unit of the combination type aircraft carrier of the present invention uses the design of pressure sensor device so that be connected two ships During body horizontal level difference, pressure transducer sends pressure signal to described control of water supply and drainage device, control of water supply and drainage device root Regulate draining or the water-supplying operation of described water feeding and draining device according to this pressure signal, in like manner, this kind of regulative mode is also applied for described Second lash barge body unit or other lash barge body unit being connected, such that it is able to one or more hulls that regulation is wherein relevant Draft, it is to avoid when the hull carrier-borne aircraft quantity in group hull unit exists the situations such as bigger gap, cause lash barge Body unit draft is inconsistent, causes male connecting elements and female connecting elements to be not on a horizontal plane, and then easily leads Cause the phenomenon of connector fracture, it is ensured that the fastness that lash barge body unit connects, and simple in construction, easy to adjust.
2. the combination type aircraft carrier of the present invention, described first pressure sensor device includes the upper inwall being located at described first inner chamber Press up the first upward pressure sensing device of force value with being used for detection first on lower inwall and be pressed downward against force value for detection first The first downforce sensing device;Described first control of water supply and drainage device is believed according to the pressure of described first upward pressure sensing device Number control described first water feeding and draining device discharges described first Lower Hold of described first lash barge body unit by water, and according to described The pressure signal of the first downforce sensing device controls described first water feeding and draining device and introduces the water into described first lash barge body list Described first Lower Hold of unit, until detected by described first upward pressure sensing device or described first downforce sensing device Force value arrives the scope preset;Equally, described second pressure sensor device include being located at described second inner chamber upper inwall and Press up the second upward pressure sensing device of force value for detection second on lower inwall and be pressed downward against force value for detection second Second downforce sensing device;Described second control of water supply and drainage device is according to the pressure signal of described second upward pressure sensing device Control described second water feeding and draining device and water is discharged described second Lower Hold of described second lash barge body unit, and according to described The pressure signal of two downforce sensing devices controls described second water feeding and draining device and introduces the water into described second lash barge body unit Described second Lower Hold, until described second upward pressure sensing device or the pressure detected by described second downforce sensing device Force value arrives the scope preset;Make the pressure transducer can be more by the setting of upward pressure sensor and lower pressure sensor The sensitive change detecting hull draft is consequently facilitating the draining feedwater of hull is adjusted.
3. described in, the first upward pressure sensing device includes: buffer unit on first, and one end is supported in described first inner chamber On inwall;Snubber contact parts on first, are connected with the other end of buffer unit on described first, buffer on described first Parts coordinate, it is achieved the buffering moved snubber contact parts on described first to the inwall of described first inner chamber;Press on first Force signal generator, is connected with snubber contact parts on described first, by snubber contact parts on described first to described The stroke of the inwall motion of one inner chamber is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication;Described first Downforce sensing device includes: first time buffer unit, and one end is supported on the inwall of described first inner chamber;First time buffering connects Contact portion part, is connected with the other end of described first time buffer unit, coordinates with described first time buffer unit, it is achieved to described First time snubber contact parts is to the buffering of the inwall motion of described first inner chamber;First downforce signal generation device, with institute State first time snubber contact parts to connect, the row moved to the inwall of described first inner chamber by described first time snubber contact parts Journey is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication;In like manner, described second upward pressure sensing device and Described second downforce sensing device is also to use buffer unit, snubber contact parts and the side of setting of pressure signal generator Formula, is converted into pressure signal by the stroke that snubber contact parts move, and exports this pressure signal in the way of the signal of telecommunication;This Buffer unit and the setting of snubber contact parts in bright make to occur between male connector and female connector to deposit during relative motion In buffering, will not jolt because of hull or other reason causes violent collision between connector, it is to avoid connector is subject to Impulsive force and fracture, the reliability of the connection being further ensured that.
4. the combination type aircraft carrier of the present invention, described first lash barge body unit is installed with the first pulling equipment, described First pulling equipment is furnished with recyclable and the first drag rope of release, and described second lash barge body unit is provided with and is suitable to described First drag rope carries out the first rope fixture of detachable connection, described first male connector is formed with first and leads to Hole, described first female connector is formed with the second through hole, is respectively adapted to pass for described first drag rope;When described first Drag rope one end is arranged on described first pulling equipment, and the other end is each passed through described first through hole and described second through hole When being connected with described first rope fixture, described drag rope is entered by described first pulling equipment by described first through hole Row reclaims, thus pulls another second ship body unit described to move along described drag rope direction of recession, and then makes described first Male connector engages with described first female connector, it is achieved the docking of two hull unit;For above design, even if at hull In the environment of more jolting, move in the direction making two hulls reclaim along drag rope, i.e. male connecting elements and female connection structure Part is mutually drawn close along drag rope, also can facilitate and complete smoothly to engage.
5. the combination type aircraft carrier of the present invention, described first male connector has tapered protrusion structure or spherical surface hill structure; Described first female connector have with described tapered protrusion structure corresponding conical indentation structure or with described spherical surface hill structure Corresponding spherical depression structure;And described first through hole is positioned at described tapered protrusion structure or the central part of spherical surface hill structure Position, described second through hole is positioned at described conical indentation structure or the centre of described spherical depression structure;Above taper is convex Rise structure or spherical surface hill structure without fully aligned and described tapered protrusion corresponding conical indentation structure or with described sphere The spherical depression structure that bulge-structure is corresponding, it is only necessary to the head of bulge-structure enters in the middle of sunk structure, can pass through The conical surface matched or sphere are taken advantage of a situation to slip into be formed in sunk structure and are engaged;Even if thus in hull is in bigger jolting, Can also achieve a butt joint.
Accompanying drawing explanation
In order to make present disclosure be more likely to be clearly understood, below according to the specific embodiment of the present invention and combine Accompanying drawing, the present invention is further detailed explanation, wherein
Fig. 1 is the lash barge body unit structural representation of the present invention;
Fig. 2 is the lash barge body unit connection diagram of the present invention;
Fig. 3 is the lash barge body unit connection diagram 1 of embodiment;
Fig. 4 is the lash barge body unit connection diagram 2 of embodiment;
Fig. 5 is the lash barge body unit connection diagram 3 of embodiment;
Fig. 6 is male connector and female connector structural representation Fig. 1;
Fig. 7 is male connector and female connector structural representation Fig. 2;
In figure, reference is expressed as: A-the first lash barge body unit, 1A-the first pulling equipment, 11A-the first drag rope, 21A-the second male connector, 22A-the first female connector, 23A-the first inner chamber, 24A-the first pressure sensor device, 24A1-first Upward pressure sensing device, 24A2-the first downforce sensing device, 25A-the second through hole, 3-pulley, 4A-the first Lower Hold, 5A- One water inlet, 6A-the first plumbing equipment, B-the second lash barge body unit, 1B-the first rope fixture, 21B-first is public even Fitting, 22B-the second female connector, 25B-the first through hole, 4B-the second Lower Hold, 5B-the second water inlet, 6B-the second plumbing sets Standby, 211-tapered protrusion structure, 212-spherical surface hill structure, 221-conical indentation structure, 222-spherical depression structure.
Detailed description of the invention
Below in conjunction with specific embodiment, a kind of combination type aircraft carrier of the present invention is specifically described:
As shown in Figures 1 and 2, a kind of combination type aircraft carrier, including the first lash barge body unit A and the second lash barge body unit B, institute The side stating the first lash barge body unit A is provided with the first female connector 22A;In the respective side of described second lash barge body unit B It is provided with the first male connector 21B matched with described first female connector 22A, described first female connector 22A to have and be suitable to Receiving the first inner chamber 23A of described first male connector 21B, the inwall of described first inner chamber 23A is provided with the first pressure sensing Device 24A, described first pressure sensor device 24A coordinate with the described first male connector 21B of insertion, are used for detecting described The first force value on vertical direction that described first inner chamber 24A is applied by one male connector 21B;Described first lash barge body unit A includes: the first Lower Hold 4A, and described first Lower Hold 4A has the first water inlet 5A connect with aqueous phase;First plumbing equipment 6A, institute State the first plumbing equipment 6A and include being located at the first water feeding and draining device within described first Lower Hold 4A, and respectively with described The first control of water supply and drainage device that one water feeding and draining device and described first pressure sensor device 24A connect, described first plumbing Control device, according to the pressure signal for described first force value received, controls described first water feeding and draining device and passes through institute State the first water inlet 5A and introduce the water into and discharge described first Lower Hold 4A, thus regulate the drinking water of described first lash barge body unit A The degree of depth, and then two sub-hull unit are maintained at default relative position.
The side of described second lash barge body unit B is provided with the second female connector 22B;Described first lash barge body unit A's Respective side is provided with the second male connector 21A matched with described second female connector 22B;Equally, described second mother is even Fitting 22B has the second inner chamber being suitable to receive described second male connector 21A, and the inwall of described second inner chamber is provided with second Pressure sensor device, described second pressure sensor device coordinates with the described second male connector 21A of insertion, is used for detecting described The second force value on vertical direction that described second inner chamber is applied by the second male connector 21A;Described second lash barge body unit B Including: the second Lower Hold 4B, described second Lower Hold 4B have the second water inlet 5B connect with aqueous phase;Second plumbing equipment 6B, institute State the second plumbing equipment 6B and include being located at the second water feeding and draining device within described second Lower Hold 4B, and respectively with described The second control of water supply and drainage device that two water feeding and draining devices and described second pressure sensor device connect, described second control of water supply and drainage Device, according to the pressure signal for described second force value received, controls described second control of water supply and drainage device and passes through institute State the second water inlet 5B and introduce the water into and discharge Lower Hold 4B described in second, thus regulate the drinking water of described second lash barge body unit B The degree of depth, and then two described lash barge body unit B are maintained at default relative position.
When hull carrier-borne aircraft quantity in group hull unit exists the situations such as bigger gap, hull unit can be caused to absorb water The degree of depth is inconsistent, causes male connecting elements and female connecting elements to be not on a horizontal plane, the most so, is easily caused connection The fracture of part, is affected the fastness that lash barge body unit connects, and the hull of the present invention, is made by the setting of pressure sensor device When connected two sub-hull unit horizontal level differences, pressure transducer transmission pressure signal, to control of water supply and drainage device, is given Drain control unit according to the regulation draining of water feeding and draining device of this pressure signal or water-supplying operation, by regulate one of them or two The draft of individual hull, make two connecting elements be on a horizontal plane, it is to avoid connector is because horizontal level difference And cause the phenomenon damaged;, it should be noted that the combination type aircraft carrier of the present embodiment, it is made up of some lash barge body units meanwhile, It is not limited to foregoing first lash barge body unit and described two sub-hull unit of the second lash barge body unit, adjacent Linked together by some male connectors matched each other and female connector between lash barge body unit, can be also between lash barge body Row connects, it is also possible to front and back coupling together, simple in construction is firm and easy to connect.
Further, as it is shown in figure 5, lash barge body unit can be separately provided female connector in side, opposite side arranges public connection Part, the most described first lash barge body unit A side is provided with described first female connector 22A, and with described second lash barge body list The described first male connector 21B coupling of unit's B sides adjacent is connected, thus is combined by lash barge body unit side by side, structure Simply;But, so that along the convenient docking of lash barge body unit of different directions navigation, as shown in Figure 3-4, Ke Yitong Time male connector is set in the side of described lash barge body unit female connector is set again, so make hull different towards time still Can rapid abutting joint, without turn around wait operation.
In the present embodiment, described first pressure sensor device 24A includes being respectively arranged on the upper interior of described first inner chamber 23A The first upward pressure sensing device 24A1 of force value and first downward for detection is pressed up for detection first on wall and lower inwall First downforce sensing device 24A2 of force value;Described first control of water supply and drainage device is according to described first upward pressure sensing dress Water is discharged described the first of described first lash barge body unit A to control described first water feeding and draining device by the pressure signal putting 24A1 Lower Hold 4A, and control described first water feeding and draining device by water according to the pressure signal of described first downforce sensing device 24A2 Introduce the described first Lower Hold 4A of described first lash barge body unit A, until described first upward pressure sensing device 24A1 or described Force value detected by first downforce sensing device 24A2 arrives the scope preset;Described second pressure sensor device includes It is located at the second upward pressure sensing device pressing up force value on the upper inwall of described second inner chamber and lower inwall for detection second With the second downforce sensing device being pressed downward against force value for detection second;Described second control of water supply and drainage device is according to described The pressure signal of two upward pressure sensing devices controls described second water feeding and draining device and water is discharged described second lash barge body unit B Described second Lower Hold 4B, and according to the pressure signal of described second downforce sensing device control described second plumbing dress Put the described second Lower Hold 4B introducing the water into described second lash barge body unit B, until described second upward pressure sensing device or institute State the force value detected by the second downforce sensing device and arrive the scope preset.
Meanwhile, described first upward pressure sensing device 24A1 includes: buffer unit on first, one end is supported in described first On the inwall of inner chamber;Snubber contact parts on first, are connected with the other end of buffer unit on described first, with described first Upper buffer unit coordinates, it is achieved the buffering moved snubber contact parts on described first to the inwall of described first inner chamber;The One upward pressure signal generation device, is connected with snubber contact parts on described first, by snubber contact parts on described first to The stroke of the inwall motion of described first inner chamber is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication;Institute Stating the first downforce sensing device 24A2 to include: first time buffer unit, one end is supported on the inwall of described first inner chamber;The Snubber contact parts once, are connected with the other end of described first time buffer unit, coordinate with described first time buffer unit, Realize the buffering that described first time snubber contact parts are moved to the inwall of described first inner chamber;First downforce signal produces Device, is connected with described first time snubber contact parts, by described first time snubber contact parts in described first inner chamber The stroke of wall motion is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication.
Equally, described second upward pressure sensing device includes: buffer unit on second, and one end is supported in described second inner chamber Inwall on;Snubber contact parts on second, are connected with the other end of buffer unit on described second, delay on described second Rush parts to coordinate, it is achieved the buffering that snubber contact parts on described second are moved to the inwall of described second inner chamber;On second Pressure signal generator, is connected with snubber contact parts on described second, by snubber contact parts on described second to described The stroke of the inwall motion of the second inner chamber is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication;Described Two downforce sensing devices include: second time buffer unit, and one end is supported on the inwall of described second inner chamber;Second time buffering Contact component, is connected with the other end of described second time buffer unit, coordinates with described second time buffer unit, it is achieved to institute State second time snubber contact parts to the buffering of the inwall motion of described second inner chamber;Second downforce signal generation device, with Described second time snubber contact parts connect, and are moved to the inwall of described second inner chamber by described second time snubber contact parts Stroke is converted into pressure signal, and exports this pressure signal in the way of the signal of telecommunication.
The setting using buffer unit and snubber contact parts makes relative fortune between male connector with female connector There is buffering time dynamic, will not jolt because of hull or other reason causes violent collision between connector, it is to avoid connect Part is fractureed by impulsive force, the reliability of the connection being further ensured that.
It is installed with the first pulling equipment 1A, described first pulling equipment 1A on described first lash barge body unit A to be furnished with Recyclable and release the first drag rope 11A, described second lash barge body unit B are provided with and are suitable to and described first drag rope 11A carries out the first rope fixture 1B of detachable connection;Concrete, described first male connector 21B is formed with the One through hole 25B, described first female connector 22A is formed with the second through hole 25A, is respectively adapted to for described first drag rope 11A passes;When described first drag rope 11A one end is arranged on described pulling equipment 1A, the other end is each passed through described Two through hole 25A and described first through hole 25B when being connected with described first rope fixture 1B, described first pulling equipment 1A By described first through hole 23B, described drag rope 11A is reclaimed, thus pull described second ship body unit B along described Drag rope 11A direction of recession moves, and then makes described first male connector 21B engage with described first female connector 22A, real The docking of existing two hull unit.
In the present embodiment, described first male connector 21B has tapered protrusion structure 211 or spherical surface hill structure 212; Described first female connector 22A have with described tapered protrusion structure 211 corresponding conical indentation structure 221 or with described sphere The spherical depression structure 222 that bulge-structure 212 is corresponding;And described first through hole 23B be positioned at described tapered protrusion structure 211 or The centre of spherical surface hill structure 212, described second through hole 23A is positioned at described conical indentation structure 221 or described sphere is recessed Falling into the centre of structure 222, above tapered protrusion structure or spherical surface hill structure are convex without fully aligned and described taper Play corresponding conical indentation structure or the spherical depression structure corresponding with described spherical surface hill structure, it is only necessary to bulge-structure Head enters in the middle of sunk structure, and can be taken advantage of a situation by the conical surface matched or sphere to slip into be formed in sunk structure is engaged; Even if thus in hull is in bigger jolting, it is also possible to achieve a butt joint, but the male connector of the present invention and female connector Structure be not limited thereto, can need connection as required to adjust connector shape and size, as long as making public connection Part and female connector are easy to engage and sound construction just meets the requirement of the present invention.
Obviously, above-described embodiment is only for clearly demonstrating example, and not restriction to embodiment.Right For those of ordinary skill in the field, can also make on the basis of the above description other multi-form change or Variation.Here without also cannot all of embodiment be given exhaustive.And the obvious change thus extended out or Change among still in the protection domain of the invention.

Claims (1)

1. a combination type aircraft carrier, including the first lash barge body unit (A) and the second lash barge body unit (B), it is characterised in that:
The side of described first lash barge body unit (A) is provided with the first female connector (22A);
The respective side of described second lash barge body unit (B) is provided with first matched with described first female connector (22A) Male connector (21B);
Described first female connector (22A) has the first inner chamber (23A) being suitable to receive described first male connector (21B), institute State the inwall of the first inner chamber (23A) and be provided with the first pressure sensor device (24A), described first pressure sensor device (24A) with Described first male connector (21B) inserted coordinates, and is used for detecting described first male connector (21B) to described first inner chamber (23A) the first force value on the vertical direction applied;
Described first lash barge body unit (A) including:
First Lower Hold (4A), described first Lower Hold (4A) has the first water inlet (5A) connect with aqueous phase;
First plumbing equipment (6A), described first plumbing equipment (6A) includes being located at that described first Lower Hold (4A) is internal One water feeding and draining device, and be connected with described first water feeding and draining device and described first pressure sensor device (24A) respectively One control of water supply and drainage device, described first control of water supply and drainage device is believed according to the pressure for described first force value received Number, control described first water feeding and draining device and introduce the water into and discharge described first Lower Hold by described first water inlet (5A) (4A), thus regulate the draft of described first lash barge body unit (A), and then two described lash barge body units (A) are kept In default relative position;
The side of described second lash barge body unit (B) is provided with the second female connector (22B);Described first lash barge body unit (A) Respective side be provided with the second male connector (21A) matched with described second female connector (22B);Described second mother is even Fitting (22B) has the second inner chamber being suitable to receive described second male connector (21A), and the inwall of described second inner chamber is provided with Second pressure sensor device, described second pressure sensor device coordinates with described second male connector (21A) of insertion, is used for examining Survey the second force value on the vertical direction that described second inner chamber is applied by described second male connector (21A);
Described second lash barge body unit (B) including:
Second Lower Hold (4B), described second Lower Hold (4B) has the second water inlet (5B) connect with aqueous phase;
Second plumbing equipment (6B), described second plumbing equipment (6B) includes being located at that described second Lower Hold (4B) is internal Two water feeding and draining devices, and the second discharge being connected with described second water feeding and draining device and described second pressure sensor device respectively Water controller, described second control of water supply and drainage device is according to the pressure signal for described second force value received, control Make described second control of water supply and drainage device and introduce the water into and discharge Lower Hold described in second (4B) by described second water inlet (5B), Thus regulate the draft of described second lash barge body unit (B), and then two described lash barge body units (B) are maintained at default Relative position;
Described first pressure sensor device (24A) includes being used on the upper inwall being located at described first inner chamber (23A) and lower inwall Detection first presses up the first upward pressure sensing device (24A1) of force value and is pressed downward against for detection first first time of force value Pressure sensor device (24A2);Described first control of water supply and drainage device is according to the pressure of described first upward pressure sensing device (24A1) Force signal controls described first water feeding and draining device and water is discharged described first Lower Hold of described first lash barge body unit (A) (4A), and according to the pressure signal of described first downforce sensing device (24A2) described first water feeding and draining device is controlled by water Introduce described first Lower Hold (4A) of described first lash barge body unit (A), until described first upward pressure sensing device (24A1) Or the force value detected by described first downforce sensing device (24A2) arrives the scope preset;
On upper inwall that described second pressure sensor device includes being located at described second inner chamber and lower inwall for detection second to Second upward pressure sensing device of upward pressure value and be pressed downward against the second downforce sensing device of force value for detection second;
Described second control of water supply and drainage device controls described second according to the pressure signal of described second upward pressure sensing device Water is discharged described second Lower Hold (4B) of described second lash barge body unit (B) by water feeding and draining device, and presses according to described second time The pressure signal of Force sensor controls described second water feeding and draining device and introduces the water into the institute of described second lash barge body unit (B) State the second Lower Hold (4B), until described second upward pressure sensing device or the pressure detected by described second downforce sensing device Force value arrives the scope preset;
Described second upward pressure sensing device includes:
Buffer unit on second, one end is supported on the inwall of described second inner chamber;
Snubber contact parts on second, are connected with the other end of buffer unit on described second, with described second on buffer part Part coordinates, it is achieved the buffering moved snubber contact parts on described second to the inwall of described second inner chamber;
Second upward pressure signal generation device, is connected with snubber contact parts on described second, by snubber contact on described second Parts are converted into pressure signal to the stroke that the inwall of described second inner chamber moves, and export this pressure letter in the way of the signal of telecommunication Number;
Described second downforce sensing device includes:
Second time buffer unit, one end is supported on the inwall of described second inner chamber;
Second time snubber contact parts, is connected with the other end of described second time buffer unit, with described second time buffer part Part coordinates, it is achieved the buffering moved described second time snubber contact parts to the inwall of described second inner chamber;
Second downforce signal generation device, is connected with described second time snubber contact parts, by described second time snubber contact Parts are converted into pressure signal to the stroke that the inwall of described second inner chamber moves, and export this pressure letter in the way of the signal of telecommunication Number.
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Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106184666B (en) * 2014-04-30 2018-01-30 王海龙 Combined type aircraft carrier
CN106741708B (en) * 2017-01-04 2018-07-13 大连理工大学 A kind of honeycomb air bag device for preventing the inclination of nuclear power platform damage from sinking
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CN114932979A (en) * 2022-06-14 2022-08-23 刘红才 Energy-saving emission-reducing segmented pushing combined cargo ship

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2176968C1 (en) * 2000-09-05 2001-12-20 Местон Вячеслав Александрович Spacecraft carrier-trimaran
RU2201378C2 (en) * 2000-10-10 2003-03-27 Халидов Гамид Юсупович Heavy aircraft carrier "tsunami"
CN101259876A (en) * 2007-03-07 2008-09-10 左学禹 Building block type aircraft carrier
KR20100008652A (en) * 2008-07-16 2010-01-26 인천대학교 산학협력단 A manless vessel system using catamaram
CN102079381A (en) * 2010-10-08 2011-06-01 朱惠芬 End-to-end double-aircraft carrier battle group
CN103043196A (en) * 2012-12-27 2013-04-17 王海龙 Ship of quickly assembled separation-type aircraft carrier

Family Cites Families (29)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2387367A1 (en) * 1977-04-12 1978-11-10 Lerolland Marcel Locking mechanism for misaligned doors - has aligning arrangement for loosely fitted socket for ensuring lock connection
JPH08230795A (en) * 1995-02-27 1996-09-10 Toshio Matsubara Runway with reduced ground run
CN1049633C (en) * 1996-03-30 2000-02-23 朱绍祥 Variable-load water float system engineering
US6196151B1 (en) * 1997-02-24 2001-03-06 Bechtel Group, Inc. Device and method for an independent module offshore mobile base
US5988932A (en) * 1997-07-31 1999-11-23 Mcdermott Technology, Inc. Marine connector
CN1291572A (en) * 1999-10-12 2001-04-18 张承普 Combined aircraft carrier
US6550408B1 (en) * 2001-12-19 2003-04-22 Hermann J. Janssen Method and apparatus for loading and unloading cargo from a twin-hull sea-going ship
CN1291572C (en) * 2003-04-30 2006-12-20 北京盈美高科数字媒体网络科技有限公司 Media content distributing method and system thereof
CN2642669Y (en) * 2003-09-18 2004-09-22 袁晓纪 Waterborne float airdrome capable of diving
JP2008519221A (en) * 2004-11-08 2008-06-05 シエル・インターナシヨネイル・リサーチ・マーチヤツピイ・ベー・ウイ Liquefied natural gas floating storage regasifier
CN201058956Y (en) * 2006-07-22 2008-05-14 张永福 Track connection without vibration and noise
CN201058656Y (en) * 2007-04-04 2008-05-14 刘伟通 Energy-saving train ship
US20080306642A1 (en) * 2007-06-08 2008-12-11 Aqualogic Marine, Inc. Remote controlled position sensing and auto-leveling boat lift controller
KR101066670B1 (en) * 2009-12-24 2011-09-21 최용호 An air cushion ship with a flowing ballast structure for freely controlling a draft line
CN102139752A (en) * 2010-02-03 2011-08-03 陈世文 Novel aircraft carrier
JP4868338B1 (en) * 2010-08-26 2012-02-01 ワタナベ株式会社 Airfield ship
CN102152842A (en) * 2011-02-10 2011-08-17 刘佳 Design scheme of connecting and assembling dual-use ultra large ships in series into marine maneuvering airport
CN102794637B (en) * 2011-05-27 2015-04-15 旭东机械(昆山)有限公司 Rim steel wire positioning machine
US9061742B2 (en) * 2011-08-05 2015-06-23 Great Lakes Dredge and Dock Company, LLC Articulated tug barge, trailing suction hopper dredge system
CN102936888B (en) * 2012-11-09 2015-01-28 中国水电顾问集团华东勘测设计研究院 Self-installation type offshore booster station structure and installation method thereof
CN103354433B (en) * 2013-02-22 2016-02-03 北京纳米能源与系统研究所 A kind of spring nano generator and self-driven dynamometer
CN103452748B (en) * 2013-09-23 2015-09-30 东北农业大学 Suspension type vertical axis wind turbine
CN103542962A (en) * 2013-10-31 2014-01-29 张丹丹 Pressure testing device
CN103557983A (en) * 2013-11-15 2014-02-05 安阳市荣诚石油矿山机械有限公司 Piston type pressure sensor
CN203902825U (en) * 2014-04-30 2014-10-29 王海龙 A combined type aircraft carrier
CN106184666B (en) * 2014-04-30 2018-01-30 王海龙 Combined type aircraft carrier
CN203902824U (en) * 2014-04-30 2014-10-29 王海龙 A combined type aircraft carrier
CN203902827U (en) * 2014-04-30 2014-10-29 王海龙 A combined type aircraft carrier
CN203902826U (en) * 2014-04-30 2014-10-29 王海龙 A combined type aircraft carrier

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2176968C1 (en) * 2000-09-05 2001-12-20 Местон Вячеслав Александрович Spacecraft carrier-trimaran
RU2201378C2 (en) * 2000-10-10 2003-03-27 Халидов Гамид Юсупович Heavy aircraft carrier "tsunami"
CN101259876A (en) * 2007-03-07 2008-09-10 左学禹 Building block type aircraft carrier
KR20100008652A (en) * 2008-07-16 2010-01-26 인천대학교 산학협력단 A manless vessel system using catamaram
CN102079381A (en) * 2010-10-08 2011-06-01 朱惠芬 End-to-end double-aircraft carrier battle group
CN103043196A (en) * 2012-12-27 2013-04-17 王海龙 Ship of quickly assembled separation-type aircraft carrier

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CN106081027A (en) 2016-11-09
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